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ELM frequency feedback control on JET

M. Lennholm, P.S. Beaumont, I.S. Carvalho, I.T. Chapman, R. Felton, D. Frigione, L. Garzotti, A. Goodyear, J. Graves, D. Grist2015年被引用 19Nuclear FusionIF 3出版社

This paper describes the first development and implementation of a closed loop edge localized mode (ELM) frequency controller using gas injection as the actuator. The controller has been extensively used in recent experiments on JET and it has proved to work well at ELM frequencies in the 15–40 Hz range. The controller responds effectively to a variety of disturbances, generally recovering the requested ELM frequency within approximately 500 ms. Controlling the ELM frequency has become of prime importance in the new JET configuration with all metal walls, where insufficient ELM frequency is associated with excessive tungsten influx. The controller has allowed successful operation near the minimum acceptable ELM frequency where the best plasma confinement can be achieved. Use of the ELM frequency controller in conjunction with pellet injection has enabled investigations of ELM triggering by pellets while maintaining the desired ELM frequency even when pellets fail to trigger ELMs.

日本語訳

本論文は、ガス入射をアクチュエータとする閉ループELM周波数制御器の初の開発と実装について述べる。本制御器はJETにおける最近の実験で広く使用され、15~40 HzのELM周波数範囲で良好に機能することが実証されている。本制御器は様々な外乱に対して効果的に応答し、要求されたELM周波数を約500 ms以内で回復する。ELM周波数の制御は、全金属壁を備えた新しいJET配位において極めて重要となっている。なぜなら、ELM周波数が不十分な場合、過剰なタングステン流入が生じるためである。本制御器により、最良のプラズマ閉じ込めが達成可能な最小許容ELM周波数付近での運転が成功裏に行われている。さらに、ペレット入射と組み合わせたELM周波数制御器の使用により、ペレットがELMを誘発しない場合でも所望のELM周波数を維持しつつ、ペレットによるELM誘発の調査が可能となった。

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jet高精度(タイトル一致)

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JETEdge localized mode
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